Formation of S-type planets in close binaries: scattering induced tidal capture of circumbinary planets
arXiv:1805.05868 · doi:10.1093/mnras/sty1300
Abstract
Although several S-type and P-type planets in binary systems were discovered in past years, S-type planets have not yet been found in close binaries with an orbital separation not more than 5 au. Recent studies suggest that S-type planets in close binaries may be detected through high-accuracy observations. However, nowadays planet formation theories imply that it is difficult for S-type planets in close binaries systems to form in situ. In this work, we extensively perform numerical simulations to explore scenarios of planet-planet scattering among circumbinary planets and subsequent tidal capture in various binary configurations, to examine whether the mechanism can play a part in producing such kind of planets. Our results show that this mechanism is robust. The maximum capture probability is , which can be comparable to the tidal capture probability of hot Jupiters in single star systems. The capture probability is related to binary configurations, where a smaller eccentricity or a low mass ratio of the binary will lead to a larger probability of capture, and vice versa. Furthermore, we find that S-type planets with retrograde orbits can be naturally produced via capture process. These planets on retrograde orbits can help us distinguish in situ formation and post-capture origin for S-type planet in close binaries systems. The forthcoming missions (PLATO) will provide the opportunity and feasibility to detect such planets. Our work provides several suggestions for selecting target binaries in search for S-type planets in the near future.
12 pages, 6 figures, accepted for publication in MNRAS
References in corpus (19)
- Dynamical Outcomes of Planet-Planet Scattering
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Tidal friction in close-in satellites and exoplanets. The Darwin theory re-visited
- On the Abundance of Circumbinary Planets
- On the Occurrence Rate of Hot Jupiters in Different Stellar Environments
- SOPHIE velocimetry of Kepler transit candidates XII. KOI-1257 b: a highly eccentric three-month period transiting exoplanet
- Planet formation in Alpha Centauri A revisited: not so accretion-friendly after all
- New prospects for observing and cataloguing exoplanets in well detached binaries
- Diffusive Tidal Evolution for Migrating hot Jupiters
- Near 3:2 and 2:1 mean motion resonances formation in the systems observed by Kepler
- Predicting a third planet in the Kepler-47 circumbinary system
- On the evolution of multiple low mass planets embedded in a circumbinary disc
- Precise radial velocities of giant stars IX. HD 59686 Ab: a massive circumstellar planet orbiting a giant star in a ~13.6 au eccentric binary system
- Near Mean-motion Resonances in the Systems Observed by Kepler: Affected by Mass Accretion and Type I Migration
- Dynamical analysis of the circumprimary planet in the eccentric binary system HD59686
- Terrestrial Planets Formation under Migration: the Systems near 4:2:1 Mean Motion Resonance
- Transit probability of precessing circumstellar planets in binaries and exomoons
- The scattering outcomes of Kepler circumbinary planets: planet mass ratio
- How eclipse time variations, eclipse duration variations, and radial velocities can reveal S-type planets in close eclipsing binaries
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- Impact of Binary Stars on Planet Statistics -- I. Planet Occurrence Rates, Trends with Stellar Mass, and Wide Companions to Hot Jupiter Hosts
- A Tale of Planet Formation: From Dust to Planets
- Planets in Binaries: Formation and Dynamical Evolution
- An ablating super-Earth in an eccentric binary from the Dispersed Matter Planet Project
- Stability of exomoons around the Kepler transiting circumbinary planets
- Dispersed Matter Planet Project Discoveries of Ablating Planets Orbiting Nearby Bright Stars
- Constraining the orbit of the planet-hosting binary Boötis: Clues about planetary formation and migration
- Departure from the Exact Location of Mean Motion Resonances Induced by the Gas Disk in the Systems Observed by Kepler
- Disks in close binary stars: γ-Cephei revisited
- Extremely Inclined Orbit of S-type Planet Cep Ab Induced by Eccentric Kozai-Lidov Mechanism
- The Gliese 86 Binary System: A Warm Jupiter Formed in a Disk Truncated at 2 AU
- Effects of a Binary Companion Star on Habitability of Tidally Locked Planets around an M-type Host Star
- Orbital stability of two circumbinary planets around misaligned eccentric binaries
- Light-Curve Evolution due to Secular Dynamics and the Vanishing Transits of KOI 120.01
- Dynamical origin of S-type planets in close binary stars
- DMPP-3: confirmation of short-period S-type planet(s) in a compact eccentric binary star system, and warnings about long-period RV planet detections
- A photospheric and chromospheric activity analysis of the quiescent retrograde-planet host Octantis A
- On the potential origin of the circumbinary planet Delorme 1 (AB)b
- Birth environment of circumbinary planets: are there CBPs on the inclined orbits?
- Effects of Variable Mass, Disk-Like Structure, and Radiation Pressure on the Dynamics of Circular Restricted Three-Body Problem
- Breaking the Mass Inclination Degeneracy of Radial Velocity Measurements via Monitoring von Zeipel-Lidov-Kozai Cycles: Implications in the HD 41004 System
- Constraining the orbit of the retrograde planet in the Octantis system